Literature DB >> 32274923

ALD of ZnO:Ti: Growth Mechanism and Application as an Efficient Transparent Conductive Oxide in Silicon Nanowire Solar Cells.

Damien Coutancier1,2, Shan-Ting Zhang1,2, Simone Bernardini1,3, Olivier Fournier1,4, Tiphaine Mathieu-Pennober5, Frédérique Donsanti1,4, Maria Tchernycheva5, Martin Foldyna6, Nathanaelle Schneider1,2.   

Abstract

In the quest for the replacement of indium tin oxide (ITO), Ti-doped zinc oxide (TZO) films have been synthesized by atomic layer deposition (ALD) and applied as an n-type transparent conductive oxide (TCO). TZO thin films were obtained from titanium (IV) i-propoxide (TTIP), diethyl zinc, and water by introducing TiO2 growth cycle in a ZnO matrix. Process parameters such as the order of precursor introduction, the cycle ratio, and the film thickness were optimized. The as-deposited films were analyzed for their surface morphology, elemental stoichiometry, optoelectronic properties, and crystallinity using a variety of characterization techniques. The growth mechanism was investigated for the first time by in situ quartz crystal microbalance measurements. It evidenced different insertion modes of titanium depending on the precursor introduction, as well as the etching of Zn-Et surface groups by TTIP. Resistivity as low as 1.2 × 10-3 Ω cm and transmittance >80% in the visible range were obtained for 72-nm-thick films. Finally, the first application of ALD-TZO as TCO was reported. TZO films were successfully implemented as top electrodes in silicon nanowire solar cells. The unique properties of TZO combined with conformal coverage realized by the ALD technique make it possible for the cell to show almost flat external quantum efficiency (EQE) response, surpassing the bell-like EQE curve seen in devices with a sputtered ITO top electrode.

Entities:  

Keywords:  QCM studies; TCO; ZnO:Ti; atomic layer deposition; n-type; silicon nanowire solar cells

Year:  2020        PMID: 32274923     DOI: 10.1021/acsami.9b22973

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  2 in total

1.  Synthesis of ZnO sol-gel thin-films CMOS-Compatible.

Authors:  Nizar Ben Moussa; Mohamed Lajnef; Nessrine Jebari; Cedric Villebasse; Fabien Bayle; Julien Chaste; Ali Madouri; Radouane Chtourou; Etienne Herth
Journal:  RSC Adv       Date:  2021-06-29       Impact factor: 4.036

2.  Investigation of the Effects of Rapid Thermal Annealing on the Electron Transport Mechanism in Nitrogen-Doped ZnO Thin Films Grown by RF Magnetron Sputtering.

Authors:  Simeon Simeonov; Anna Szekeres; Dencho Spassov; Mihai Anastasescu; Ioana Stanculescu; Madalina Nicolescu; Elias Aperathitis; Mircea Modreanu; Mariuca Gartner
Journal:  Nanomaterials (Basel)       Date:  2021-12-22       Impact factor: 5.076

  2 in total

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